Computation of electric field of 100kV FGM spacer for gas insulated bus duct applications

M. Naik, J. Amarnath, S. Kamakshiah, A. Varaprasadarao
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引用次数: 2

Abstract

In this paper application of functionally gradient material (FGM) for optimized design of single phase gas insulated bus duct. Modeling of cone spacer in SF6 gas insulated substation (GIS) bus duct and extensive electrostatic field stress distribution analyses using Finite Element Method (FEM) is illustrated in this paper. A unique feature of this design is the simulation of electric field distribution on cone insulator with varying relative permittivity εr for supporting high voltage bus duct. The electric field distribution over homogeneous insulator and FGM insulator with optimized relative permittivity distribution is explored with analyses results.
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气体绝缘母线管道用100kV FGM隔层电场计算
本文将功能梯度材料应用于单相气体绝缘母线风管的优化设计。本文对SF6气体绝缘变电站(GIS)母线管中锥形隔垫的建模及广泛的静电场应力分布进行了有限元分析。本设计的一个独特之处在于模拟了支撑高压母线槽的变相对介电常数εr锥形绝缘子上的电场分布。结合分析结果,探讨了优化相对介电常数分布的均匀绝缘子和FGM绝缘子上的电场分布。
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